Merging cultures and disciplines to create a drug discovery ecosystem at Virginia commonwealth university: Medicinal chemistry, structural biology, molecular and behavioral pharmacology and computational chemistry

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Glen E. Kellogg, Yana Cen, Malgorzata Dukat, Keith C. Ellis, Youzhong Guo, Jiong Li, Aaron E. May, Martin K. Safo, Shijun Zhang, Yan Zhang, Umesh R. Desai
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引用次数: 1

Abstract

The Department of Medicinal Chemistry, together with the Institute for Structural Biology, Drug Discovery and Development, at Virginia Commonwealth University (VCU) has evolved, organically with quite a bit of bootstrapping, into a unique drug discovery ecosystem in response to the environment and culture of the university and the wider research enterprise. Each faculty member that joined the department and/or institute added a layer of expertise, technology and most importantly, innovation, that fertilized numerous collaborations within the University and with outside partners. Despite moderate institutional support with respect to a typical drug discovery enterprise, the VCU drug discovery ecosystem has built and maintained an impressive array of facilities and instrumentation for drug synthesis, drug characterization, biomolecular structural analysis and biophysical analysis, and pharmacological studies. Altogether, this ecosystem has had major impacts on numerous therapeutic areas, such as neurology, psychiatry, drugs of abuse, cancer, sickle cell disease, coagulopathy, inflammation, aging disorders and others. Novel tools and strategies for drug discovery, design and development have been developed at VCU in the last five decades; e.g., fundamental rational structure-activity relationship (SAR)-based drug design, structure-based drug design, orthosteric and allosteric drug design, design of multi-functional agents towards polypharmacy outcomes, principles on designing glycosaminoglycans as drugs, and computational tools and algorithms for quantitative SAR (QSAR) and understanding the roles of water and the hydrophobic effect.

融合文化和学科,在弗吉尼亚联邦大学创建药物发现生态系统:药物化学、结构生物学、分子和行为药理学以及计算化学。
弗吉尼亚联邦大学(VCU)的药物化学系与结构生物学、药物发现与开发研究所一起,通过大量的自举,有机地发展成为一个独特的药物发现生态系统,以应对大学和更广泛的研究企业的环境和文化。每一位加入该系和/或研究所的教员都增加了一层专业知识、技术,最重要的是创新,这促进了大学内部和外部合作伙伴的大量合作。尽管对典型的药物发现企业提供了适度的机构支持,但VCU药物发现生态系统已经建立并维护了一系列令人印象深刻的设施和仪器,用于药物合成、药物表征、生物分子结构分析和生物物理分析以及药理学研究。总之,这个生态系统对许多治疗领域产生了重大影响,如神经学、精神病学、滥用药物、癌症、镰状细胞病、凝血障碍、炎症、衰老障碍等。在过去的五十年里,VCU开发了用于药物发现、设计和开发的新工具和策略;例如,基于基本合理结构-活性关系(SAR)的药物设计,基于结构的药物设计、正构和变构药物设计,针对多药结果的多功能制剂的设计,将糖胺聚糖设计为药物的原则,以及用于定量SAR(QSAR)和理解水的作用和疏水效应的计算工具和算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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